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The development of a top-surface mounted technique for the measurement of moisture profiles in drying concrete slabs

机译:用于干燥混凝土板中水分分布测量的表面安装技术的发展

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摘要

Failure of surface coatings on concrete slabs can occur if there is excess moisture in the slab. There is a need for reliable standard measurement procedures to determine whether a concrete slab is dry enough to have a surface coating applied. Accordingly the Building Research Association of New Zealand commissioned this project to develop a top-surface mounted resistive technique for measuring moisture profiles in concrete flooring slabs. Geophysical vertical electric sounding (VES) techniques have been adapted to determine resistivity profiles in concrete slabs through mathematical inversion of apparent resistivity readings made at the surface. Relative-humidity profiles may then be extracted when the relationship between relative-humidity and resistivity has been determined. The project has involved the development and testing of: •'wet' electrodes (ie. wooden electrodes wetted with a conducting solution) which are able to reduce and stabilise the otherwise high, variable and non-reproducible electrode-concrete interface resistance, •a VES instrument comprising an array of electrodes multiplexed to a computer controlled resistivity meter and operated through a graphical user interface and software able to 'invert' the apparent resistivity curves determined, •embedded electrode systems for independent measurement of resistivity profiles for use in evaluating the VES instrument and technique and determining the relationship between relative humidity and resistivity. Resistivity ρ and relative-humidity ψ profiles have been measured using a range of concrete samples and the relationship between them, away from the dry surface region, has been found to be described by the equation ψ = -aln(ρ) + b where a and b are coefficients that are functions of depth and the age of the concrete. The ability of the VES instrument to determine resistivity profiles from non-reinforced slabs is demonstrated in this report. However reinforcing at shallow depths (30 mm below the surface) does not allow profile recovery and makes commercialisation of the instrument unlikely. It is suggested that the embedded electrode systems developed here, provide a convenient and inexpensive method of directly measuring resistivity profiles from which relative-humidity profiles may be extracted with a high degree of precision.
机译:如果混凝土板上的水分过多,则混凝土板上的表面涂层可能会失效。需要可靠的标准测量程序来确定混凝土板是否足够干燥以施加表面涂层。因此,新西兰建筑研究协会委托该项目开发了一种用于测量混凝土楼板湿度曲线的表面安装电阻技术。地球物理垂直电测深(VES)技术已通过在地表视电阻率读数的数学反演而适用于确定混凝土板中的电阻率曲线。当确定相对湿度和电阻率之间的关系时,可以提取相对湿度曲线。该项目涉及以下方面的开发和测试:•“湿”电极(即用导电溶液浸湿的木质电极),它们能够降低和稳定原本较高,可变且不可复制的电极-混凝土界面电阻,•a VES仪器包括与计算机控制的电阻率仪多路复用的电极阵列,并通过图形用户界面进行操作;软件能够“反转”所确定的视在电阻率曲线;•用于独立测量电阻率曲线的嵌入式电极系统,用于评估VES仪器和技术,并确定相对湿度和电阻率之间的关系。使用一系列混凝土样品测量了电阻率ρ和相对湿度ψ曲线,并且发现它们之间的关系远离干燥表面区域,并由等式ψ= -aln(ρ)+ b来描述,其中a b是混凝土的深度和使用年限的函数。该报告证明了VES仪器确定非增强板电阻率曲线的能力。但是,在较浅的深度(表面以下30毫米)处进行加固无法恢复轮廓,并使该仪器不太可能商业化。建议在此开发的嵌入式电极系统提供了一种方便且便宜的方法,可以直接测量电阻率曲线,可以高精度地从中提取相对湿度曲线。

著录项

  • 作者

    Lovell-Smith J. W.;

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  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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